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Celestial Objects
Celestial Objects

... a) red shiftshift- shift toward longer red wavelengths of energy showing that an object is moving AWAY from Earth 1) the farther away the galaxy, the greater the red shift 2) almost all galaxies show a red shiftshiftproof that the universe is expanding (Edwin Hubble was the first to realize this!) ...
Worksheet
Worksheet

... Objective – After watching a DVD, I can compare the distance of objects within the universe. ...
knowledge quiz - Discovery Education
knowledge quiz - Discovery Education

... stars? A. the star’s luminosity, or brightness B. the star’s color C. the star’s size D. All of these are possible characteristics. 7. Although they did not have telescopes, ancient people studied space. What did they observe? A. details on planets in far-away galaxies B. only the sun and the moon C ...
Deep Space and Solar System
Deep Space and Solar System

... • One light year is how far light travels in one year (based on distance NOT time) • We see all night stars as they were when the light we see left each star ...
P1_Physics_Summary_Topic_3
P1_Physics_Summary_Topic_3

... Keywords: red giant, supernova, white dwarf, black dwarf, fusion reactions, main sequence, neutron star ...
Ch. 27.3 Star Groups
Ch. 27.3 Star Groups

...  One complete rotation in 200 million years.  Our sun is about 30,000 light-years from the center. ...
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Structure formation

In physical cosmology, structure formation refers to the formation of galaxies, galaxy clusters and larger structures from small early density fluctuations. The Universe, as is now known from observations of the cosmic microwave background radiation, began in a hot, dense, nearly uniform state approximately 13.8 billion years ago. However, looking in the sky today, we see structures on all scales, from stars and planets to galaxies and, on still larger scales still, galaxy clusters and sheet-like structures of galaxies separated by enormous voids containing few galaxies. Structure formation attempts to model how these structures formed by gravitational instability of small early density ripples.The modern Lambda-CDM model is successful at predicting the observed large-scale distribution of galaxies, clusters and voids; but on the scale of individual galaxies there are many complications due to highly nonlinear processes involving baryonic physics, gas heating and cooling, star formation and feedback. Understanding the processes of galaxy formation is a major topic of modern cosmology research, both via observations such as the Hubble Ultra-Deep Field and via large computer simulations.
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